A cup-shaped, doubled-walled actuator for a pressurized aerosol dispenser for the dispensing of a foam product as a wad or pad including providing a venting path through the cup-shaped surface of the actuator, through the space defined by the cup-shaped surface and an outer cylindrical wall and beneath the outer wall to the outside of the container when the actuator is mounted in position on the container. An inner cylindrical wall suitable for affixing the actuator to the outside of the bead formed by the mouth of the container and the mounting cup resiliently urges the actuator toward valve closure.

Patent
   4420099
Priority
Jun 10 1981
Filed
Jun 10 1981
Issued
Dec 13 1983
Expiry
Jun 10 2001
Assg.orig
Entity
Large
20
70
EXPIRED
1. In an actuator for a pressurized aerosol dispenser which comprises a one-piece actuator body having a generally cylindrical outer wall, a cup-shaped portion having an upper edge defining a cup-shaped receptacle open at the top, the facing surfaces of said cylindrical outer wall and cup-shaped member defining an inner space, a discharge orifice near the bottom of the cup-shaped receptacle, a socket on the underside of the discharge orifice adapted to receive the hollow valve stem of a pressurized aerosol container, said socket having an opening communicating at one end with the discharge orifice of the actuator and at the other end with the hollow valve stem, the improvement comprising at least one vent aperture disposed in the surface defining the cup-shaped receptacle, which vent is disposed beneath the upper edge of the actuator and provides a passage from the cup-shaped receptacle to the inner space for propellant gas to escape from the product, said actuator being further adapted to vent the gas from the inner space.
2. The actuator of claim 1 wherein the actuator body also includes a generally cylindrical inner shell having a plurality of flexible portions concentric with the sidewall, the flexible portions of the inner shell including means to lock the actuator on the outside of the bead formed between the shoulder closure of the container and the valve-bearing container closure to hold the actuator on the dispenser.
3. The actuator of claim 1 and further wherein the valve stem receiving socket is dimensioned so as to receive the valve stem without actuation of the valve during mounting of the actuator on the container.
4. The actuator of claim 1, and further comprising adapting the actuator to vent the propellant gas beneath the outer cylindrical side wall.

Aerosol dispensed foams and lathers have been used for many years. Recently synthetic cotton materials have been developed which permit the generation of an aseptic cotton substitute upon demand. These materials and dispenser containers are disclosed in the following patents: Beres et al. U.S. Pat. No. 3,744,678; Hayes U.S. Pat. No. 3,770,170; Hayes U.S. Pat. No. 3,865,283; Hayes U.S. Pat. No. Des. 230,472; and Hayes U.S. Pat. No. Des. 238,855.

The present invention is directed to an actuator device for effecting actuation of the valve of a pressurized aerosol container filled with material for generating foam or synthetic cottom which is to be formed as wads or pads. The actuator includes a cup-shaped receptacle in communication with a dispenser orifice to promote the formation of a wad or ball of synthetic cotton or foam and includes novel means for affixing the actuator to the container and for venting propellant gas from the receptacle.

FIG. 1 is a partial sectional of the actuator cap of this invention and a valved aerosol container for use therewith.

FIG. 2 is a partial sectional of the valve stem receiving socket of the actuator of this invention.

FIG. 1 is a view in cross-section of an actuator cap, generally designated as 10, in accordance with the present invention, and wherein the cap is in the non-activated position. The actuator cap 10 is shown in place on a pressurized aerosol container, generally designated as 30. The actuator cap includes a cup-shaped top portion 12, having an orifice 14 in the bottom of the top portion, which orifice 14 is in communication with a valve stem receiving socket 16 on the underside of the top portion 12. Additionally, the actuator 10 has two cylindrical shells, inner shell 13 and outer shell 15, which shells align, as hereafter described, with the mounting cup-container bead 19 and the outer bead of the container 30, respectively. The actuator 10 is positioned on the container 30 such that the valve stem 32 of the container extends into the socket 16 of the actuator.

As mentioned above, the actuator 10 has inner and outer shells, 13 and 15, respectively. Inner shell 13 is configured such that it has an upper continous annular portion 21 and a lower slotted portion 22; said lower portion 22 having an inwardly-directed lip portion 18. The diameter of the inner shell 13 is dimensioned such that the lip portion 18 snaps over and below the rim 34 of a conventional valve mounting cup-container joinder, thereby affixing the actuator 10 to the container 30.

The outer cylindrical wall 15 is generally coaxial with the inner shell 13 and provides a finished appearance to the assembly of actuator cap and container. Note however, that the outer wall terminates within the interior of the double seam 36 which joins the top dome 38 to the sidewall of the container and is dimensioned such that upon actuation the wall 15 does not bottom onto the bottom portion 31 of the dome 38. Alternatively, the outer wall 15 may be made larger in diameter to fit outside the seam 36, however a clearance must be provided between the seam 36 and the inner surface of shell 15.

A series of vent apertures 17 are provided near the upper rim of the cup-shaped receptacle to vent propellant gas from the cup as the wad or pad of foam or synthetic cotton is generated. The vent apertures 17 communicate with the space between the inner 13 and outer 15 walls. Arrows indicate the path of the vented gas. To assure free escape for the gas, the lower margin of the outer wall can be slotted or scalloped to prevent a seal if the lower margin abuts the dome 34 on the double seam 36 of the container. Apertures can also be formed elsewhere in the outer wall 15. By venting the gas interior of the cap, rather than over the rim of the cup, the user is not subjected to or normally even aware of the flow of gas. The prior art designs represented by the above listed patents cause gas to flow between the user's hand and the rim of the cup. This is objected to by some users.

The actuator cap 10 of the present invention is brought into operation by pushing down on the upper rim with a hand. The lower portion of inner shell 13 bears against the dome 38 of the container and splays radially outwardly. The downward motion of the actuator 10 forces the valve stem 32 of the container 30 downwardly to open the dispenser valve. The synthetic cotton or foam material flows upwardly of the hollow stem and through orifice 14 to form a wad or pad of synthetic cotton or foam in the cup 12. The user's palm seals off the upper rim of the actuator cap as the cup is being filled. Vent apertures 17 near the rim serve to vent off air and propellant gas which escapes from the forming pad of synthetic cotton. The gas travels between the inner and outer walls 13 and 15 and escapes to the atmosphere. Upon completion of actuation, the resilience of the material of the lower margin of the splayed inner shell provides an upward restorative force for the actuator 10. This upward force acts together with the upward spring bias of the valve stem 32 to assure prompt closure of the valve and termination of product flow.

For certain applications, it is desirable that the mounting and locking of the actuator 10 onto the container 30 not be accompanied by a depression or actuator of the valve and pre-release of the container contents. To accomplish this end, the interfit and structural configuration of the recess of the stem-receiving socket 16 and the valve stem 32 is arranged as shown in FIG. 1; and shown in more detail in FIG. 2 in the actuated position.

As shown in FIG. 2, the recess 24 of the stem-receiving socket 16 is slightly chamfered by providing the annular sloping shoulder 25 in the recess 24. The cylindrical wall portion 27 of the recess 24 is dimensioned such that when the actuator 10 is in a non-actuated position, that is, the lip portion 18 abuts the underside of the rim 34 (position shown in FIG. 1), the top of the valve stem 32 is not fully seated in the recess 24. Optimally, the top of the valve stem during non-actuation is contiguous to the widest diameter of the shoulder 25. Moreover, the diameter of the valve stem 32 and the diameter of the cylindrical wall portion 27 of the recess 24 are such that the valve stem 32 may pass into the cylindrical wall portion 27 of the recess 24 without frictional engagement and depression of the valve stem during mounting and locking of the actuator 10 to the container 30. During actuation as shown in FIG. 2, the valve stem 32 engages the shoulder 25 and thereby provides a seal between the sloping shoulder 25 of the recess 24 and the stem 32. Upon release of the valve actuating pressure, the actuator 10 is unseated from recess 24 as shown in FIG. 1.

Naku, Virgil, Pizzurro, Joseph C.

Patent Priority Assignee Title
10000330, Mar 10 2014 Plastek Industries, Inc. Modular spray cap
10591337, May 16 2014 APTAR GROUP, INC Dispensing cup for aerosol device
10647501, Apr 06 2015 S C JOHNSON & SON, INC Dispensing systems
11407581, Apr 06 2015 S. C. Johnson & Son, Inc. Dispensing systems
5335832, Feb 14 1992 L Oreal Device for activating a dispensing mechanism such as a pump or a valve
6021926, Jul 13 1995 The Procter & Gamble Company Packaged foaming composition
6113008, Aug 20 1998 3M Innovative Proprerties Company Actuator system for spraying a formulation onto a host
6382469, Jul 31 2001 Precision Thermoplastic Components, Inc. Tire inflation actuator
6478198, Jul 14 2000 Cone-shaped aerosol can spray nozzle
6889921, Sep 30 2002 CARLISLE FLUID TECHNOLOGIES, INC Bell cup skirt
6926174, Nov 29 1999 APTAR FRANCE SAS Safety cap
6971557, Jun 19 2003 S. C. Johnson & Son, Inc. Actuator for a pressurized material dispenser
7628298, Feb 28 2007 U S BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT Aerosol overcap with evaporation vent
8146782, Dec 06 2003 WELLA INTERNATIONAL OPERATIONS SWITZERLAND SARL; HFC PRESTIGE INTERNATIONAL OPERATIONS SWITZERLAND SÀRL Foam head, and foam head with a propellant container
8479752, Dec 24 2007 RECKITT & COLMAN OVERSEAS HYGIENE HOME LIMITED Cleaning device
8496014, Oct 18 2006 RECKITT BENCKISER UK LIMITED Cleaning device
8506197, Jul 01 2010 BEATY, MELODY MORRISON Cleaning or applicating apparatus and dispensing system
8646661, Mar 23 2011 Aerosol can liquid dispenser
8733599, Jan 19 2012 Lloyd, Hornland Combined cap and actuator device for aerosol container
9475634, Dec 01 2010 Spray dispensing cup
Patent Priority Assignee Title
2612293,
2671578,
2707968,
2821048,
2831613,
2883089,
2907358,
2908479,
2913749,
2961128,
2963265,
2973114,
2973123,
2981446,
3001524,
3012555,
3107033,
3144175,
3203454,
3223332,
3224645,
3228567,
3235132,
3236421,
3301444,
3306252,
3358882,
3410492,
3426949,
3446478,
3456851,
3464593,
3494510,
3606966,
3726444,
3729119,
3729120,
3741445,
3744678,
3770170,
3792802,
3841532,
3865283,
3887115,
3917127,
3934751, May 17 1972 Safety overcap for dispensing containers
3946912, Jan 02 1975 Actuator cap for aerosol dispenser
3955716, Nov 27 1973 L'Oreal Decorative cover for valved end of pressurized containers
3963152, Jan 02 1975 Childproof cap for aerosol dispenser
4034427, Jan 26 1976 The Clorox Company Aerosol drain opener device
4077542, Dec 02 1974 Unattended aerosol dispenser
4087022, Apr 30 1975 Device for dispensing a toilet solution
4126273, Feb 22 1977 FOX VALLEY MARKETING SYSTEMS, INC , Actuator and actuator-orientator assembly for aerosol spray cans
4226340, Aug 15 1978 Tissue treatment dispenser
AU222248,
CA978912,
CH424662,
230472,
238855,
242226,
DE1075054,
DE14574625,
DE1750025,
DE2034842,
FR1204554,
FR1213348,
FR1220570,
FR1418921,
GB2031525,
GB839775,
///
Executed onAssignorAssigneeConveyanceFrameReelDoc
Jun 05 1981PIZZURRO, JOSEPH C PRECISION VALVE CORPORATONASSIGNMENT OF ASSIGNORS INTEREST 0038940210 pdf
Jun 05 1981NAKU, VIRGILPRECISION VALVE CORPORATONASSIGNMENT OF ASSIGNORS INTEREST 0038940210 pdf
Jun 10 1981Precision Valve Corporation(assignment on the face of the patent)
Date Maintenance Fee Events
Jan 05 1987ASPN: Payor Number Assigned.
Jul 14 1987REM: Maintenance Fee Reminder Mailed.
Dec 13 1987EXP: Patent Expired for Failure to Pay Maintenance Fees.
Jun 21 1991:
Jun 21 1991F169: Payment is in Excess of Amount Required. Refund Scheduled.


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